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Microstructures and electrical properties of lead zinc niobate-lead titanate-lead zirconate ceramics using microwave sintering

机译:微波烧结铌酸铅锌-钛酸铅-锆酸铅陶瓷的微观结构和电性能

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Electrical properties and microstructural characteristics of (1 - x)(0.94PbZn_(1/3)Nb_(2/3)O_3+0.06BaTiO_3)+ xPbZr_yTi_(1-y)O_3 (PZN-PZ-PT) ceramics, sintered by microwave heating, were investigated using electron microscopy, energy-dispersive spectroscopy (EDS) and electrical property measurement. Experimental results imply that the microwave-sintered (MW) samples with x = 0.5 and y = 0.52 (1150 deg C,.10min) possess higher dielectric constant than the conventionally sintered (CS) specimens (1150 deg C, 2h). Microstructural investigations show that ZnO precipitated on the surfaces of specimens during a thermal process, implying that ZnO diffusion may have influenced the distribution of phases in a specimen due to an eutectic reaction of PbO and ZnO. TEM-EDS investigations show that the CS specimens exhibit pronounced elemental segregation of PbO and ZnO at the grain boundaries, but it is much less significant for MW samples. The results imply that microwave sintering not only enhances material densification markedly, but also reduces the PbO/ZnO segregation and amorphous intergranular layers effectively, and thus improve the electrical properties of PZN-PZ-PT ceramics.
机译:(1-x)(0.94PbZn_(1/3)Nb_(2/3)O_3 + 0.06BaTiO_3)+ xPbZr_yTi_(1-y)O_3(PZN-PZ-PT)陶瓷的电学性能和微观结构特征使用电子显微镜,能量色散光谱(EDS)和电性能测量研究了加热。实验结果表明,x = 0.5和y = 0.52(1150摄氏度,10分钟)的微波烧结(MW)样品具有比常规烧结(CS)样品(1150摄氏度,2h)更高的介电常数。显微组织研究表明,在热处理过程中,ZnO沉淀在样品表面,这表明由于PbO和ZnO的共晶反应,ZnO扩散可能影响了样品中的相分布。 TEM-EDS研究表明,CS样品在晶界处表现出明显的PbO和ZnO元素偏析,但对于MW样品而言,其显着性要小得多。结果表明,微波烧结不仅显着提高了材料的致密性,而且有效地减少了PbO / ZnO的偏析和非晶态晶界层,从而改善了PZN-PZ-PT陶瓷的电性能。

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